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Tryptophan-47 in the active site of Methylophaga sp. strain SK1 flavin-monooxygenase is important for hydride transfer.

Arch Biochem Biophys.. 2013-04;  532(1):46 - 53
Han A, Robinson RM, Badieyan S, Ellerbrock J, Sobrado P. Department of Biochemistry, Virginia Tech, Blacksburg, VA 24061, USA.
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摘要

Flavin-dependent monooxygenase (FMO) from Methylophaga sp. strain SK1 catalyzes the NADPH- and oxygen-dependent hydroxylation of a number of xenobiotics. Reduction of the flavin cofactor by NADPH is required for activation of molecular oxygen. The role of a conserved tryptophan at position 47 was probed by site-directed mutagenesis. FMOW47A resulted in an insoluble inactive protein; in contrast, FMOW47F was soluble and active. The spectrum of the flavin in the mutant enzyme was redshifted, indicating a change in the flavin environment. The kcat values for NADPH, trimethylamine, and methimazole, decreased 5-8-fold. Primary kinetic isotope effect values were higher, indicating that hydride transfer is more rate-l... More

关键词

Flavin monooxygenases; Active site residue; Flavin; Hydride transfer; Kinetic isotope effects